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1. Akindoyo J.O., Beg M.D.H., Ghazali S., Islam M.R., Jeyaratnam N., Yuvaraj A.R., 2016, Polyurethane types, synthesis and applications – a review, RSC Advances, 6(115), pp. 114453–114482 |
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3. Tersac G., 2007, Chemistry and technology of polyols for polyurethanes, Polymer International, 56(6), pp. 820 |
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Tiêu đề: |
Polymer International |
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4. Islam M.R., Beg M.D.H., and Jamari S.S., 2014, Development of vegetable-oil-based polymers, J. Appl. Polym. Sci., 131(18), pp. 40787–40790 |
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Tiêu đề: |
J. Appl. Polym. Sci |
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5. Shi Y., Yu B., Zhou K., Yuen R.K.K., Gui Z., Hu Y., and Jiang S., 2015, Novel CuCo 2 O 4 /graphitic carbon nitride nanohybrids: Highly effective catalysts for reducing CO generation and fire hazards of thermoplastic polyurethane nanocomposites, J. Hazard. Mater., 293,pp. 87–96 |
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Tiêu đề: |
J. Hazard. Mater |
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6. Jin L., Liu Z., Xu Q., Li, Y., 2005, Preparation of soap-free cationic emulsion using polymerizable surfactant, Journal of Applied Polymer Science, 99(3), pp. 1111–1116 |
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Tiêu đề: |
Journal of Applied PolymerScience |
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8. Anisur M.R., Kibria M.A., Mahfuz M.H., Saidur R., and Metselaar I.H.S.C., 2015, Latent Heat Thermal Storage (LHTS) for Energy Sustainability, Energy Sustainability Through Green Energy, Part of the series Green Energy and Technology, pp. 245–263 |
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Tiêu đề: |
Energy Sustainability Through Green Energy |
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9. Cinelli P., Anguillesi I., and Lazzeri A., 2013, Green synthesis of flexible polyurethane foams from liquefied lignin, Eur. Polym. J., 49, pp. 1174–1184 |
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11.More A.S., Lebarb´e T., Maisonneuve L., Gadenne B., Alfos C., and Cramail H., 2013, Novel fatty acid based diisocyanates towards the synthesis of thermoplastic polyurethanes, Eur. Polym. J., 49, pp. 823–833 |
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12. Njuguna J., Michałowski S., Pielichowski K., Kayvantash K., and Walton A.C., 2011, Fabrication, characterization and lowvelocity impact testing of hybrid sandwich composites with polyurethane/layered silicate foam cores, Polym. Compos., 32, pp. 6–13 |
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13. Middleton J.C., and Tipton A.J., 2000, Synthetic biodegradable polymers as orthopedic devices, Biomaterials, 21, pp. 2335–2346 |
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14. Morgan A.B., Wilkie C.A., 2007, Flame retardant polyme nanocomposites, Wiley Interscience. ISBN: 978-0-471-73426-0 |
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Tiêu đề: |
Flame retardant polyme nanocomposites |
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15.Grand A.F., Wilkie, C.A. (Eds), 2000, Fire Retardancy of Polymeric Materials, Marcel Dekker Inc., New York, NY, USA. ISBN 0-8247- 8879-6 |
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Tiêu đề: |
Fire Retardancy of PolymericMaterials |
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16. Lyon R.E., Takemori M.T., Safronava N., Stoliarov S.I., Walters R.N., 2009, A molecular basis for polymer flammability, Polymer, 50, pp.2608–2617 |
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17. Horold S., 2014, Phosphorus-based and Intumescent Flame Retardants.In Polymer Green Flame Retardants, 1st ed., Papaspyrides C.D., Kiliaris, P., Eds., Elsevier: Amsterdam, The Netherlands, pp. 221–250 |
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Tiêu đề: |
In Polymer Green Flame Retardants |
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18. Wilén, C.E., Pfaendner R., 2014, Design and Utilization of Nitrogen Containing Flame Retardants Based on N-Alkoxyamines, Azoalkanes and Related Compounds, Polymer Green Flame Retardants, pp. 267–288 |
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Tiêu đề: |
Polymer Green Flame Retardants |
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19. Khobragade P.S., Hansora D.P., Naik J.B., & Chatterjee A., 2016, Flame retarding performance of elastomeric nanocomposites: A review, Polymer Degradation and Stability, 130, pp. 194–244 |
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Tiêu đề: |
Polymer Degradation and Stability |
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7. Heinen M., Gerbase A.E., and Petzhold C.L., 2014, Vegetable oilbased rigid polyurethanes and phosphorylated flameretardants derived from epoxydized soybean oil, Polym. Degrad. Stab., 108, pp. 76–86 |
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10.Yan R., Wang R., Lou C.W. , Huang S.Y., and Lin J.H., 2015, Quasi- static and dynamic mechanical responses of hybrid laminated |
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